Processing of incoming sensory stimulation triggers an increase of cerebral perfusion and blood oxygenation (neurovascular response) as well as an alteration of the metabolic neurochemical profile (neurometabolic response). Here, we show in human primary visual cortex (V1) that perceived and unperceived isoluminant chromatic flickering stimuli designed to have similar neurovascular responses as measured by blood oxygenation level-dependent functional magnetic resonance imaging (BOLD-fMRI) have markedly different neurometabolic responses as measured by proton functional magnetic resonance spectroscopy (1H-fMRS). In particular, a significant regional buildup of lactate, an index of aerobic glycolysis, and glutamate, an index of malate-aspartate shuttle, occurred in V1 only when the flickering was perceived, without any relation with other behavioral or physiological variables. Whereas the BOLD-fMRI signal in V1, a proxy for input to V1, was insensitive to flickering perception by design, the BOLD-fMRI signal in secondary visual areas was larger during perceived than unperceived flickering, indicating increased output from V1. These results demonstrate that the upregulation of energy metabolism induced by visual stimulation depends on the type of information processing taking place in V1, and that 1H-fMRS provides unique information about local input/output balance that is not measured by BOLD-fMRI.

Perception is associated with the brain's metabolic response to sensory stimulation / Dinuzzo, Mauro; Mangia, Silvia; Moraschi, Marta; Mascali, Daniele; Hagberg, Gisela E; Giove, Federico. - In: ELIFE. - ISSN 2050-084X. - 11:(2022), pp. 1-20. [10.7554/eLife.71016]

Perception is associated with the brain's metabolic response to sensory stimulation

Mangia, Silvia;Mascali, Daniele;Giove, Federico
2022

Abstract

Processing of incoming sensory stimulation triggers an increase of cerebral perfusion and blood oxygenation (neurovascular response) as well as an alteration of the metabolic neurochemical profile (neurometabolic response). Here, we show in human primary visual cortex (V1) that perceived and unperceived isoluminant chromatic flickering stimuli designed to have similar neurovascular responses as measured by blood oxygenation level-dependent functional magnetic resonance imaging (BOLD-fMRI) have markedly different neurometabolic responses as measured by proton functional magnetic resonance spectroscopy (1H-fMRS). In particular, a significant regional buildup of lactate, an index of aerobic glycolysis, and glutamate, an index of malate-aspartate shuttle, occurred in V1 only when the flickering was perceived, without any relation with other behavioral or physiological variables. Whereas the BOLD-fMRI signal in V1, a proxy for input to V1, was insensitive to flickering perception by design, the BOLD-fMRI signal in secondary visual areas was larger during perceived than unperceived flickering, indicating increased output from V1. These results demonstrate that the upregulation of energy metabolism induced by visual stimulation depends on the type of information processing taking place in V1, and that 1H-fMRS provides unique information about local input/output balance that is not measured by BOLD-fMRI.
2022
BOLD-fMRI; central visual system; human; human brain metabolism; lactate; neuroscience; single-voxel 1H-fMRS; visual perception
01 Pubblicazione su rivista::01a Articolo in rivista
Perception is associated with the brain's metabolic response to sensory stimulation / Dinuzzo, Mauro; Mangia, Silvia; Moraschi, Marta; Mascali, Daniele; Hagberg, Gisela E; Giove, Federico. - In: ELIFE. - ISSN 2050-084X. - 11:(2022), pp. 1-20. [10.7554/eLife.71016]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1689242
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